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有丝分裂中染色体复制不足的控制断裂机制。

A Mechanism for Controlled Breakage of Under-replicated Chromosomes during Mitosis.

机构信息

Institute of Biochemistry, ETH Zürich, Otto-Stern-Weg 3, 8093 Zürich, Switzerland.

Department of Molecular Mechanisms of Disease, University of Zürich, Winterthurerstrasse 190, 8057 Zürich, Switzerland.

出版信息

Dev Cell. 2016 Dec 19;39(6):740-755. doi: 10.1016/j.devcel.2016.11.017.

Abstract

While DNA replication and mitosis occur in a sequential manner, precisely how cells maintain their temporal separation and order remains elusive. Here, we unveil a double-negative feedback loop between replication intermediates and an M-phase-specific structure-selective endonuclease, MUS81-SLX4, which renders DNA replication and mitosis mutually exclusive. MUS81 nuclease is constitutively active throughout the cell cycle but requires association with SLX4 for efficient substrate targeting. To preclude toxic processing of replicating chromosomes, WEE1 kinase restrains CDK1 and PLK1-mediated MUS81-SLX4 assembly during S phase. Accordingly, WEE1 inhibition triggers widespread nucleolytic breakage of replication intermediates, halting DNA replication and leading to chromosome pulverization. Unexpectedly, premature entry into mitosis-licensed by unrestrained CDK1 activity during S phase-requires MUS81-SLX4, which inhibits DNA replication. This suggests that ongoing replication assists WEE1 in delaying entry into M phase and, indirectly, in preventing MUS81-SLX4 assembly. Conversely, MUS81-SLX4 activation during mitosis promotes targeted resolution of persistent replication intermediates, which safeguards chromosome segregation.

摘要

虽然 DNA 复制和有丝分裂是按顺序发生的,但细胞如何精确地保持时间上的分离和顺序仍然难以捉摸。在这里,我们揭示了复制中间体和 M 期特异性结构选择性内切酶 MUS81-SLX4 之间的双负反馈环,该环使 DNA 复制和有丝分裂相互排斥。MUS81 核酸酶在整个细胞周期中都是组成性激活的,但需要与 SLX4 结合才能有效地靶向底物。为了防止复制染色体的毒性加工,WEE1 激酶在 S 期抑制 CDK1 和 PLK1 介导的 MUS81-SLX4 组装。因此,WEE1 抑制会引发广泛的复制中间体的核酶断裂,从而停止 DNA 复制并导致染色体粉碎。出乎意料的是,在 S 期不受限制的 CDK1 活性许可下过早进入有丝分裂需要 MUS81-SLX4,它抑制 DNA 复制。这表明正在进行的复制有助于 WEE1 延迟进入 M 期,并间接地阻止 MUS81-SLX4 组装。相反,MUS81-SLX4 在有丝分裂期间的激活促进了持续复制中间体的靶向解决,从而保护了染色体分离。

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